Suppr超能文献

翻译延伸因子3(EF-3):一种不断演变的真核核糖体蛋白?

Translation elongation factor-3 (EF-3): an evolving eukaryotic ribosomal protein?

作者信息

Belfield G P, Ross-Smith N J, Tuite M F

机构信息

Research School of Biosciences, University of Kent, Canterbury, United Kingdom.

出版信息

J Mol Evol. 1995 Sep;41(3):376-87.

PMID:7563124
Abstract

Fungi appear to be unique in their requirement for a third soluble translation elongation factor. This factor, designated elongation factor 3 (EF-3), exhibits ribosome-dependent ATPase and GTPase activities that are not intrinsic to the fungal ribosome but are nevertheless essential for translation elongation in vivo. The EF-3 polypeptide has been identified in a wide range of fungal species and the gene encoding EF-3 (YEF3) has been isolated from four fungal species (Saccharomyces cerevisiae, Candida albicans, Candida guillermondii, and Pneumocystis carinii). Computer-assisted analysis of the predicted S. cerevisiae EF-3 amino acid sequence was used to identify several potential functional domains; two ATP binding/catalytic domains conserved with equivalent domains in members of the ATP-Binding Cassette (ABC) family of proteins, an amino-terminal region showing significant similarity to the E. coli S5 ribosomal protein, and regions of predicted interaction with rRNA, tRNA, and mRNA. Furthermore, EF-3 was also found to display amino acid similarity to myosin proteins whose cellular function is to provide the motive force of muscle. The identification of these regions provides clues to both the evolution and function of EF-3. The predicted functional regions are conserved among all known fungal EF-3 proteins and a recently described homologue encoded by the Chlorella virus CVK2. We propose that EF-3 may play a role in the ribosomal optimization of the accuracy of fungal protein synthesis by altering the conformation and activity of a ribosomal "accuracy center," which is equivalent to the S4-S5-S12 ribosomal protein accuracy center domain of the E. coli ribosome. Furthermore, we suggest that EF-3 represents an evolving ribosomal protein with properties analogous to the intrinsic ATPase activities of higher eukaryotic ribosomes, which has wider implications for the evolutionary divergence of fungi from other eukaryotes.

摘要

真菌似乎在对第三种可溶性翻译延伸因子的需求方面独具特色。这个因子被命名为延伸因子3(EF - 3),它展现出核糖体依赖性ATP酶和GTP酶活性,这些活性并非真菌核糖体所固有,但对于体内的翻译延伸却是必不可少的。EF - 3多肽已在多种真菌物种中被鉴定出来,并且编码EF - 3的基因(YEF3)已从四种真菌物种(酿酒酵母、白色念珠菌、季也蒙念珠菌和卡氏肺孢子菌)中分离出来。通过计算机辅助分析预测的酿酒酵母EF - 3氨基酸序列,来鉴定几个潜在的功能结构域;两个与ATP结合盒(ABC)蛋白家族成员中的等效结构域保守的ATP结合/催化结构域,一个与大肠杆菌S5核糖体蛋白有显著相似性的氨基末端区域,以及预测与rRNA、tRNA和mRNA相互作用的区域。此外,还发现EF - 3与肌球蛋白蛋白在氨基酸上有相似性,肌球蛋白蛋白的细胞功能是提供肌肉的动力。这些区域的鉴定为EF - 3的进化和功能提供了线索。预测的功能区域在所有已知的真菌EF - 3蛋白以及最近描述的由小球藻病毒CVK2编码的同源物中都是保守的。我们提出,EF - 3可能通过改变核糖体“准确性中心”的构象和活性,在真菌蛋白质合成准确性的核糖体优化中发挥作用,该“准确性中心”等同于大肠杆菌核糖体的S4 - S5 - S12核糖体蛋白准确性中心结构域。此外,我们认为EF - 3代表一种不断进化的核糖体蛋白,其性质类似于高等真核生物核糖体的固有ATP酶活性,这对于真菌与其他真核生物的进化差异具有更广泛的意义。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验